Patient auxiliary massage device for operating room nursing
By designing a patient-assisted massage device that includes a telescopic airbag and an electric push rod, the problem of physical exertion for operating room nurses during manual massage was solved, achieving a more labor-saving massage process and improved surgical efficiency.
Patent Information
- Application Number
- CN202422926306.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-11-28
AI Technical Summary
In existing technologies, operating room nurses manually massaging patients' limbs consumes physical energy, affects the subsequent surgical process, and has an adverse effect on the patient's psychological and physical condition.
Design a patient-assisted massage device that includes a telescopic airbag, a movable plate, and an electric push rod. The electric push rod controls the inflation and deflation of the airbag, which drives the movable plate and pressure block to massage the patient's limbs, reducing manual operation.
This makes the massage process less strenuous, allowing nursing staff to better meet the needs of subsequent surgeries, reduce physical exertion, and improve surgical efficiency.
Smart Images

Figure CN223845953U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the massage equipment field especially is concerned with a patient auxiliary massage device for operating room nursing. BACKGROUND
[0002] Operation refers to the treatment mode that the doctor or other professional medical personnel uses medical instrument to the patient's body, such as resection, suture, etc., to maintain the health of the patient, is the main treatment method of surgery, commonly known as "operation". The purpose of operation includes removing diseased tissue, repairing damage, transplanting organs, improving the function and form of the body, etc. The operation process usually needs to go through anesthesia, disinfection, incision, hemostasis, ligation, suture, etc. The specific operation mode, site and range, etc. Will be determined according to the patient's condition and the purpose of operation.
[0003] The patient under non-general anesthesia is very sensitive in the operation process because of being in a state of wakefulness, and the patient's psychology bears a lot of pressure and burden, which will show nervous, anxious, uneasy and other psychological emotions, which will make the patient's limbs appear spasm, stiffness and numbness, which is very unfavorable to the development of operation and affects the safety of the patient's life, so intervention is needed in clinical practice. In the prior art, the nursing staff in the operating room usually massages the patient's limbs with hands to relieve the condition of the patient's limbs, and such manual massage method consumes a lot of physical strength of the nursing staff, which will seriously affect the physical condition of the nursing staff in the subsequent operation, which is very unfavorable to the operation process, and even will affect the operation process. UTILITARIAN CONTENT
[0004] The utility model aims at providing a patient auxiliary massage device for operating room nursing, which can be more convenient and labor-saving for nursing staff during patient massage, and enable medical staff to have enough physical strength to cope with the subsequent operation process.
[0005] The patient auxiliary massage device for operating room nursing includes a mounting frame in a door type structure, the left and right inner side walls of the mounting frame are fixed with telescopic air bags, the mounting frame is provided with a suction assembly for inflating and exhausting the interiors of the two telescopic air bags, the unfixed ends of the two telescopic air bags are fixed with moving plates, all the moving plates are fixed with a plurality of pressure blocks for pressing the patient's limbs, the mounting frame is provided with a guide assembly for guiding the moving direction of the two moving plates, and the mounting frame is fixed with a plurality of handles.
[0006] Further, the suction assembly comprises a positioning sleeve fixed on the top of the mounting frame, a left-right movable air cylinder horizontally arranged in the positioning sleeve, and a screw arranged on the positioning sleeve and used for locking the air cylinder after movement, wherein the air cylinder is connected with the two telescopic air bags through an air pipe, and a piston is independently arranged in the air cylinder; and an electric push rod is horizontally arranged on the top of the mounting frame, and the telescopic end of the electric push rod is fixed with the piston.
[0007] Further, the top of the mounting frame is fixed with an outer shell.
[0008] Further, the guiding assembly comprises a plurality of guide rods, all of which are horizontally fixed in the mounting frame, and a plurality of through holes for the guide rods to pass through are arranged on all the moving plates.
[0009] Further, a plurality of supporting blocks are fixed on the inner top of the mounting frame.
[0010] Further, all the supporting blocks are made of elastic material.
[0011] Further, all the pressing blocks are made of elastic material.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] The nursing staff holds the handle, moves the massage device to the patient's limbs, puts the patient's limbs into the mounting frame and between the two telescopic air bags, adjusts the amount of air injected into the two telescopic air bags through the suction assembly according to the thickness of the patient's limbs, adjusts the length of the telescopic air bag, so that the force during massage can make the patient feel comfortable; then, the telescopic air bag is inflated or deflated through the suction assembly, so that the two telescopic air bags are simultaneously inflated and elongated or contracted, the two moving plates are reciprocally moved towards the limbs, the pressing blocks on the two moving plates can top and press the patient's limbs, manual massage is not needed, the massage process is more convenient and labor-saving, and the medical staff can have enough physical strength to cope with the subsequent operation process. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structural schematic view of the utility model;
[0015] Figure 2 It is Figure 1 It is a sectional view of A-A;
[0016] Figure 3 It is a perspective view of the utility model;
[0017] Figure 4 It is an exploded view of the utility model;
[0018] The names of the components in the figure are as follows: 1, connector 2, air cylinder 3, positioning sleeve 4, piston 5, electric push rod 6, shell 7, mounting frame 8, telescopic air bag 9, moving plate 10, pressing block 11, guide rod 12, supporting block 13, air pipe. DETAILED DESCRIPTION
[0019] The utility model will be further described below by specific examples in combination with the drawings, but it is not used to limit the utility model, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
[0020] EMBODIMENT
[0021] The patient auxiliary massage device for operating room nursing described in the embodiment, as shown in Figure 1 , Figure 2 and Figure 4 , comprises a mounting frame 7 in a door type structure, the mounting frame 7 can be made of polypropylene, ABS, polycarbonate, PC, PVC and the like, the mounting frame 7 made of these materials has the advantages of light weight, impact resistance, insulation, chemical resistance, high strength, good toughness, easy processing and high surface gloss and the like; in use, the patient's limbs enter the mounting frame 7 from the opening;
[0022] The left and right inner side walls of the mounting frame 7 are fixed with telescopic air bags 8; the telescopic air bags 8 are existing products made of EVA, rubber and the like, the structure is similar to that of an organ, the biggest feature is that it will be elongated when inflated and will be contracted after exhaust; the two telescopic air bags 8 are aligned left and right, and can be telescoped towards the patient's limbs when inflated;
[0023] Further description, as shown in Figure 1 , Figure 2 and Figure 4 , the preferred mounting frame 7 in the embodiment comprises a positioning sleeve 3, the positioning sleeve 3 is fixed on the top of the mounting frame 7, and the air cylinder 2 which can move left and right is horizontally arranged in the positioning sleeve 3; the positioning sleeve 3 is in a U-shaped structure, the opening end thereof is fixed on the positioning sleeve 3, and there is a gap between the air cylinder 2 and the positioning sleeve 3, so that the air cylinder 2 can be pulled out of the positioning sleeve 3; the positioning sleeve 3 is provided with a screw for locking the moved air cylinder 2, and the top of the positioning sleeve 3 is provided with a threaded hole which is in threaded cooperation with the screw and communicates upward and downward, when the air cylinder 2 is arranged in the positioning sleeve 3, the screw is rotated to abut against the air cylinder 2, so as to lock the air cylinder 2, thereby facilitating the disassembly and replacement of the air cylinder 2; the air cylinder 2 is connected and communicated with the two telescopic air bags 8 through the air pipe 13, as shown in Figure 1 and Figure 4As shown, two telescopic air bags 8 are connected to one end of two air pipes 13 through connecting heads 1, and the other end of the two air pipes 13 is connected to the left end of the air cylinder 2 through the connecting head 1, so that the air in the two telescopic air bags 8 and the air cylinder 2 can communicate with each other, and it is convenient to disassemble. The connecting head 1 is a product, which will not be described here. The piston 4 is independently installed in the air cylinder 2. The top of the mounting frame 7 is horizontally installed with an electric push rod 5. The telescopic end of the electric push rod 5 is fixed with the piston 4. When the telescopic end of the electric push rod 5 is telescoped, it will drive the piston 4 to move along the air cylinder 2. When the piston 4 moves to the left, the piston 4 extrudes the air in the air cylinder 2, so that the air in the air cylinder 2 is transported to the two telescopic air bags 8 through the two air pipes 13, so that the two telescopic air bags 8 can be inflated and elongated at the same time. When the piston 4 moves to the right, the air in the two telescopic air bags 8 is extracted through the two air pipes 13, so that the two telescopic air bags 8 are contracted. By adjusting the length of the telescopic electric push rod 5, the amount of air injected into the two telescopic air bags 8 is controlled, so as to adjust the length of the telescopic air bag 8. The whole scheme constitutes a suction assembly for inflating and extracting air in the two telescopic air bags 8. Of course, the suction assembly can also use a gas cylinder. The air cylinder 2 is fixed on the top of the mounting frame 7. The air cylinder 2 and the two telescopic air bags 8 are connected through the air pipe 13. The piston 4 is independently installed in the air cylinder 2. The gas cylinder is horizontally installed on the top of the mounting frame 7. The telescopic end of the gas cylinder is fixed with the piston 4, so as to drive the piston 4 to move through the telescopic gas cylinder, so as to inflate or extract air in the two telescopic air bags 8.
[0024] The top of the mounting frame 7 is fixed with a shell 6. The electric push rod 5 and the air cylinder 2 are located in the shell 6, so as to protect the internal devices through the shell 6.
[0025] The movable plates 9 are fixed on the unfixed ends of the two telescopic air bags 8. A plurality of pressure blocks 10 for pressing the patient's limbs are fixed on all the movable plates 9. All the pressure blocks 10 are made of polyurethane, silica gel, rubber, latex and the like. The texture of these materials is soft and elastic, which can better contact with the human body surface, avoid damage to the human body surface, and better simulate the touch of finger massage. In this embodiment, three pressure blocks 10 are uniformly distributed on the side wall of each movable plate 9 towards the limbs, and the cross section of all the pressure blocks 10 is semicircular, as shown in the figure. Figure 4 When the two telescopic air bags 8 are inflated and telescoped, the two movable plates 9 will move, so that the pressure blocks 10 on the two movable plates 9 press and massage the patient's limbs.
[0026] The inner top of the mounting frame 7 is fixed with a plurality of supporting blocks 12. In the embodiment, two supporting blocks 12 are aligned and distributed at the inner top of the mounting frame 7 from front to back, and all the supporting blocks 12 are made of polyurethane, silica gel, rubber, latex and the like. These materials have soft texture and elasticity, and can better contact with the human body surface, so that the patient can be more comfortable when contacting with the massage device. The surface of the supporting block 12 in contact with the patient is arc concave, so that the patient's limbs can be positioned when being in contact with the patient's limbs. When the massage device is placed on the patient's limbs from top to bottom, the supporting block 12 can support the device after being in contact with the limbs. When the massage device is placed upside down on the operating bed, the shell 6 can be attached to the operating bed, and the patient's limbs can be placed in the mounting frame 7 from top to bottom, and the patient's limbs can be supported by the supporting block 12. Different use methods can be used according to different situations, so that the nursing staff can be more labor-saving during massage, and have enough physical strength to cope with the subsequent operation process.
[0027] Further description, as shown in Figure 1 and Figure 4 , the preferred embodiment includes a plurality of guide rods 11, all of which are fixed horizontally in the mounting frame 7, and all of the moving plates 9 are provided with a plurality of perforations for the guide rods 11 to pass through. In the embodiment, the guide rods 11 are two, which are fixed horizontally in the mounting frame 7 in front-to-back parallel manner, and the perforations on all the moving plates 9 are two, with a gap between the hole wall of the perforation and the guide rod 11, so that the moving plate 9 can move along the guide rod 11, thereby guiding the moving plate 9 through the guide rod 11, and moving the two moving plates 9 towards the patient's limbs. The whole scheme constitutes a guide assembly for guiding the moving direction of the two moving plates 9. Of course, the guide assembly can also use the cooperation of two sliding blocks and a sliding groove, which is opened in the inner top of the mounting frame 7, and the two sliding blocks are fixed on the two moving plates 9 respectively. When the two moving plates 9 move, the sliding blocks will move in the sliding groove, thereby guiding the moving direction of the two moving plates 9 through the cooperation of the sliding blocks and the sliding groove.
[0028] A plurality of handles are fixed on the mounting frame 7. In the embodiment, the handles are two, which are fixed on the left and right side walls of the mounting frame 7, so that the nursing staff can hold the handles to lift the massage device, thereby making it more convenient for the nursing staff to use or move.
[0029] In actual use, the nursing staff holds the handle to move the massage device above the patient's limb, and places it on the patient's limb from top to bottom, so that the patient's limb enters the installation frame 7 and is located between the two telescopic air bags 8, the supporting block 12 is attached to the surface of the limb, and then the length of the electric push rod 5 is adjusted according to the thickness of the patient's limb to control the amount of air injected into the two telescopic air bags 8, adjust the length of the telescopic air bag 8, and make the massage force comfortable for the patient; then, start the electric push rod 5, the telescopic end of the electric push rod 5 drives the piston 4 to move into the air cylinder 2, the piston 4 extrudes the air in the air cylinder 2, the air in the air cylinder 2 is transported into the telescopic air bag 8 through the two air pipes 13, the two telescopic air bags 8 are inflated and elongated at the same time, and the two moving plates 9 are pushed to move in the direction of the limb, the pressing block 10 on the two moving plates 9 can press and massage the patient's limb, when the electric push rod 5 is retracted, the air in the two telescopic air bags 8 will be extracted, so that the two telescopic air bags 8 are contracted, and the pressing block 10 is away from the patient's limb, the two telescopic air bags 8 are elongated and contracted repeatedly, so that the patient's limb can be repeatedly pressed and massaged, without manual massage by the nursing staff, so that the massage process is more convenient and labor-saving, and the medical staff can have enough physical strength to cope with the subsequent operation process; when the massage device is placed upside down on the operating bed, the shell 6 is attached to the operating bed, the patient's limb is placed in the installation frame 7 from top to bottom, and the patient's limb is supported by the supporting block 12, different use methods can be used according to different situations, so that the nursing staff can be more labor-saving during massage.
Claims
1. A patient-assisted massaging device for operating room care, comprising a mounting frame (7) in the form of a gate structure, characterized in that: The left and right inner walls of the mounting frame (7) are fixed with telescopic air bags (8), the mounting frame (7) is provided with a suction assembly for inflating and deflating the interiors of the two telescopic air bags (8), the unfixed ends of the two telescopic air bags (8) are fixed with moving plates (9), all the moving plates (9) are fixed with a plurality of pressing blocks (10) for pressing the limbs of patients, the mounting frame (7) is provided with a guiding assembly for guiding the moving directions of the two moving plates (9), and the mounting frame (7) is fixed with a plurality of handles.
2. The patient-assisted massaging device for operating room nursing according to claim 1, characterized by: The suction assembly comprises a positioning sleeve (3) fixed on the top of the mounting frame (7), a left-right movable inflation cylinder (2) horizontally arranged in the positioning sleeve (3), screws for locking the moved inflation cylinder (2) arranged on the positioning sleeve (3), the inflation cylinder (2) and the two telescopic air bags (8) connected through air pipes (13), and a piston (4) independently arranged in the inflation cylinder (2), wherein the top of the mounting frame (7) is horizontally provided with an electric push rod (5), and the telescopic end of the electric push rod (5) is fixed with the piston (4).
3. The patient-assisted massaging device for operating room nursing according to claim 2, characterized by: The top of the mounting frame (7) is fixed with a shell (6).
4. The patient-assisted massaging device for operating room nursing according to claim 1, characterized by: The guiding assembly comprises a plurality of guide rods (11), all the guide rods (11) are horizontally fixed in the mounting frame (7), and a plurality of perforations for the guide rods (11) to pass through are formed in all the moving plates (9).
5. The patient-assisted massaging device for operating room nursing according to claim 1, characterized by: The inner top of the mounting frame (7) is fixed with a plurality of supporting blocks (12).
6. The patient-assisted massaging device for operating room nursing according to claim 5, characterized by: All the supporting blocks (12) are made of elastic material.
7. The patient-assisted massaging device for operating room nursing according to claim 1, characterized by: All the pressing blocks (10) are made of elastic material.